首页> 美国卫生研究院文献>Journal of Bacteriology >Regulation of the furA and catC Operon Encoding a Ferric Uptake Regulator Homologue and Catalase-Peroxidase Respectively in Streptomyces coelicolor A3(2)
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Regulation of the furA and catC Operon Encoding a Ferric Uptake Regulator Homologue and Catalase-Peroxidase Respectively in Streptomyces coelicolor A3(2)

机译:调节furA和catC操纵子分别编码coelicolor A3(2)中的铁摄取调节剂同源物和过氧化氢酶过氧化物酶。

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摘要

We isolated the catC gene, encoding catalase-peroxidase in Streptomyces coelicolor, using sequence homology with the katG gene from Escherichia coli. Upstream of the catC gene, an open reading frame (furA) encoding a homologue of ferric uptake regulator (Fur) was identified. S1 mapping analysis indicated that the furA gene was cotranscribed with the catC gene. The transcriptional start site of the furA-catC mRNA was mapped to the translation start codon ATG of the furA gene. The putative promoter contains consensus −10 and −35 elements similar to those recognized by ςHrdB, the major sigma factor of S. coelicolor. The transcripts were produced maximally at late-exponential phase and decreased at the stationary phase in liquid culture. The change in the amount of mRNA was consistent with that of CatC protein and enzyme activity. When the furA gene was introduced into S. lividans on a multicopy plasmid, the increased production of catC transcripts and protein product at late growth phase was inhibited, implying a role for FurA as the negative regulator of the furA-catC operon. FurA protein bound to its own promoter region between −59 and −39 nucleotides from the transcription start site. The binding affinity of FurA increased under reducing conditions and in the presence of metals such as Ni2+, Mn2+, Zn2+, or Fe2+. Addition of these metals to the growth medium decreased the production of CatC protein, consistent with the role of FurA as a metal-dependent repressor.
机译:我们使用与来自大肠杆菌的katG基因的序列同源性分离了coelicolor链霉菌中编码过氧化氢酶过氧化物酶的catC基因。在catC基因的上游,鉴定了一个编码铁摄取调节剂(Fur)同源物的开放阅读框(furA)。 S1作图分析表明furA基因与catC基因共转录。 furA-catC mRNA的转录起始位点被定位到furA基因的翻译起始密码子ATG。推定的启动子包含共有的-10和-35元素,类似于s。coelicolor的主要sigma因子ς HrdB 所识别的。在液体培养中,转录本在指数后期达到最大,而在静止期则下降。 mRNA量的变化与CatC蛋白和酶活性的变化一致。当在多拷贝质粒上将furA基因引入到S. lividans中时,生长后期的catC转录物和蛋白质产物的产量增加受到抑制,这暗示FurA作为furA-catC操纵子的负调控子。 FurA蛋白在转录起始位点的-59至-39个核苷酸之间与其自身的启动子区域结合。在还原条件下以及在金属例如Ni 2 + ,Mn 2 + ,Zn 2 + ,或Fe 2 + 。将这些金属添加到生长培养基中会降低CatC蛋白的产生,这与FurA作为金属依赖性阻遏物的作用一致。

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